Decoupled control of temperature and relative humidity using a variable-air-volume HVAC system and non-interacting control

C. Rentel-Gómez, M. Velez-Reyes
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引用次数: 37

Abstract

In this paper, we develop a nonlinear noninteracting control system for temperature and relative humidity in a thermal-space conditioned by a variable-air-volume (VAV) heating, ventilating, and air conditioning (HVAC) system. In some industrial processes it is desirable to be able to control temperature and relative humidity independently and accurately. When the controller does not take into account the coupling dynamics between these variables, it is impossible to set one without affecting the other, therefore the importance of decoupling techniques to achieve accurate control. We demonstrate how decoupled control of temperature and relative humidity is possible using a multivariable cascade control with two loops. The inner-loop is the noninteracting control law used for decoupling, and the outer-loop is a PD controller used for stabilization and control. Simulations are presented at the end of the paper in order to validate the theoretical results.
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使用变风量暖通空调系统和非交互控制对温度和相对湿度进行解耦控制
在本文中,我们开发了一个非线性非相互作用的控制系统,用于控制由变风量(VAV)采暖,通风和空调(HVAC)系统调节的热空间的温度和相对湿度。在某些工业过程中,需要能够独立准确地控制温度和相对湿度。当控制器不考虑这些变量之间的耦合动力学时,不可能在不影响另一个变量的情况下设置一个变量,因此解耦技术对实现精确控制的重要性。我们演示了如何解耦控制温度和相对湿度是可能的使用多变量级联控制与两个回路。内环是用于解耦的非交互控制律,外环是用于稳定和控制的PD控制器。最后通过仿真验证了理论结果。
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